AME8500CEFVDA22 概述
UProcessor Supervisory UPROCESSOR监事会
AME8500CEFVDA22 数据手册
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PDF下载AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n General Description
n Typical Operating Circuit
The AME8500 family allows the user to customize the
CPU reset function without any external components.
The user has a large choice of reset voltage thresholds,
reset time intervals, and output driver configurations, all
of which are preset at the factory. Each wafer is trimmed
to the customer's specifications.
*
2
VCC
VCC
AME8500
Processor
RESET
Input
RESET / RESET
These circuits monitor the power supply voltage of µP
based systems. When the power supply voltage drops
below the voltage threshold a reset is asserted immedi-
ately (within an interval TD1). The reset remains asserted
after the supply voltage rises above the voltage threshold
for a time interval, TD2 . The reset output may be either
active high (RESET) or active low (RESETB). The reset
output may be configured as either push/pull or open
drain. The state of the reset output is guaranteed to be
correct for supply voltages greater than 1V.
GND
GND
3
Note: * External pull-up resistor is required if open-
drain output is used. 10 kΩ is recommended.
The AME8501 includes all the above functionality plus
an overtemperature shutdown function. When the ambi-
ent temperature exceeds 80oC a reset is asserted and
remains asserted until the temperature falls below 60oC.
n Block Diagram
AME8500 with Push-Pull RESET
Space saving SOT23 packages and micropower qui-
escent current (<3.0µA) make this family a natural for
portable battery powered equipment.
VDD
I1
R1
R2
P1
N1
n Features
l Small packages: SOT-23, SOT-89
Delay
RESET
l 11 voltage threshold options
VREF
l Tight voltage threshold tolerance ---±1.50%
l 5 reset interval options
GND
l 4 output configuration options
l Wide temperature range -------- -40oC to 85oC
l Low temperature coefficient --- 100ppm/oC(max)
l Low quiescent current < 3.0µA
l Thermal shutdown option (AME8501)
AME8500 with Push-Pull RESET
VDD
I1
R1
n Applications
P1
l Portable electronics
RESET
Delay
l Power supplies
R2
VREF
l Computer peripherals
l Data acquisition systems
l Applications using CPUs
l Consumer electronics
N1
GND
1
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Block Diagram (contd.)
AME8500 with Open-Drain RESET
AME8500 with Open-Drain RESET
VDD
VDD
I1
I1
R1
R1
R2
Delay
RESET
RESET
Delay
R2
VREF
VREF
N1
N1
GND
GND
n Pin Configuration
SOT-23
SOT-23
Top View
Top View
3
3
AME8500BEET
AME8501BEET
1. Reset/ResetB
2. GND
AME8500AEET
AME8501AEET
1. GND
AME8500
AME8500
2. Reset/ResetB
3. VDD
3. VDD
1
2
1
2
SOT-23
Top View
SOT-23-L
Top View
3
3
AME8500AEET
AME8501AEET
1. GND
AME8500CEET
AME8501CEET
1. Reset/ResetB
2. VDD
AME8500
AME8500
2. Reset/ResetB
3. VDD
3. GND
1
2
1
2
2
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Pin Configuration (contd.)
SOT-23-L
Top View
SOT-23-L
Top View
3
3
AME8500CEET
AME8501CEET
1. Reset/ResetB
2. VDD
AME8500BEET
AME8501BEET
1. Reset/ResetB
2. GND
AME8500
AME8500
3. GND
3. VDD
1
2
1
2
SOT-89
SOT-89
Top View
Top View
AME8500BEFT
AME8501BEFT
1. Reset/ResetB
2. VDD
AME8500AEFT
AME8501AEFT
1. GND
AME8500
AME8500
2. VDD
3. GND
3. Reset/ResetB
1
5
2
3
1
2
3
SOT-89
Top View
SOT-25
Top View
4
AME8500CEFT
AME8501CEFT
1. VDD
AME8500BEEV
AME8501BEEV
1. Reset/ResetB
2. VDD
AME8500
AME8500
2. GND
3. Reset/ResetB
3. GND
4. N/C
1
2
3
1
2
3
5. N/C
n Pin Description
Pin Name
Pin Description
GND
Ground
This pin can be ordered as RESET or RESETB. RESET is active high.
RESETB is active low. It is also available with an open drain or pushpull
output.
RESETB/RESET
VDD
Positive power supply. A reset is asserted after this voltage drops below
a predetermined level. After VDD rises above that level the reset output
remains asserted until the end of the reset timeout period.
3
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Ordering Information
AME8500 x x x x x x x x
AME8501 x x x x x x x x
Special Feature
VDD Threshold Voltage (VTH)
Reset Time (TD2NOM
)
Output Driver Option
Number of Pins
Package Type
Operating Temperature Range
Pin Configuration
Output Driver
Option
Characteristic
of RESET or
RESETB pin
Reset
Time
VDD
Threshold
Voltage (VTH)
Operating
Temperature
Range
Number
of
Pins
Pin
Package
Type
Special
Feature
Configuration
(TD2NOM
)
O
O
A
(SOT-23)
1. GND
2. Reset/
ResetB
3. VDD
1. Reset/
ResetB
2. GND
3. VDD
1. Reset/
ResetB
2. VDD
3. GND
1. GND
2. VDD
3. Reset/
ResetB
1. Reset/
ResetB
2. VDD
3. GND
1. VDD
2. GND
3. Reset/
ResetB
E:
E: SOT-2X
F: SOT-89
T: 3
V: 5
A: RESETB /PP A: 1.5 ms 15:VTH= 1.5V L: Low profile
B: RESETB /OD D: 30 ms 16:VTH= 1.6V Y: Lead free &
-40 C to 85 C
C: RESET/ PP E: 150 ms 18:VTH= 1.8V
Low profile
D: RESET/ OD F: 210 ms 19:VTH= 1.9V Z: Lead free
B
(SOT-23)
20:VTH= 2.0V
21:VTH= 2.1V
(RESET = Active High)
(RESETB = Active Low)
22:VTH= 2.2V
(PP = Push pull out)
23:VTH= 2.32V
C
(SOT-23)
24:VTH= 2.4V
26:VTH= 2.63V
(OD = Open drain output
polarity)
27:VTH= 2.7V
28:VTH= 2.8V
29:VTH= 2.93V
31:VTH= 3.08V
40:VTH= 4.0V
42:VTH= 4.2V
44:VTH= 4.38V
46:VTH= 4.63V
A
(SOT-89)
B
(SOT-89)
C
(SOT-89)
4
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Ordering Information
Part Number
AME8500AEETAA21
AME8500AEETAD20
AME8500AEETAE20
AME8500AEETAE21
AME8500AEETAE26
AME8500AEETAE26L
AME8500AEETAE29
AME8500AEETAE31
AME8500AEETAE46
AME8500AEETAF15
AME8500AEETAF16
AME8500AEETAF21
AME8500AEETAF23
AME8500AEETAF26
AME8500AEETAF27
AME8500AEETAF29
AME8500AEETAF31
AME8500AEETAF40
AME8500AEETAF44
AME8500AEETAF46
AME8500AEETBF31
AME8500AEETBF46
AME8500AEETCA21
AME8500AEETCA27
AME8500AEETCA46
AME8500AEETCD20
AME8500AEETCF21
AME8500AEETCF29
AME8500AEETCF31
Marking
VTH Voltage
2.10V
2.00V
2.00V
2.10V
2.63V
2.63V
2.93V
3.08V
4.63V
1.50V
1.60V
2.10V
2.32V
2.63V
2.70V
2.93V
3.08V
4.00V
4.38V
4.63V
3.08V
4.63V
2.10V
2.70V
4.63V
2.00V
2.10V
2.93V
3.08V
Package Operating Temp. Range
- 40oC to + 85oC
SOT-23
ASVww
ALXww
AUAww
AVGww
ASJww
ASJww
ALYww
AUBww
ATSww
ATDww
ATEww
ASKww
ATTww
AMPww
ATRww
AMOww
ASAww
ASBww
ARNww
ARKww
AUTww
AUUww
ASWww
AVBww
AVCww
ALZww
ATYww
ALVww
ASUww
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
5
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Ordering Information (contd.)
Part Number
Marking
VTH Voltage
Package Operating Temp. Range
- 40oC to + 85oC
SOT-23
AME8500AEETCF46
ARJww
4.63V
- 40oC to + 85oC
SOT-23
AME8500AEETDF46
AME8500AEFTAA21
AME8500AEFTAF27
AME8500AEFTCA21
AME8500AEFTDA21
AME8500BEETAA21
AME8500BEETAA27
AME8500BEETAA28
AME8500BEETAA29
AME8500BEETAF27
AME8500BEETAF29
AME8500BEETAF31
AME8500BEETAF40
AME8500BEETBA21
AME8500BEETBA22
AME8500BEETBA24
AME8500BEETBA27
AME8500BEETBA28
AME8500BEETBA28L
AME8500BEETBA28Y
AME8500BEETBA29
ARIww
4.63V
2.10V
2.70V
2.10V
2.10V
2.10V
2.70V
2.80V
2.93V
2.70V
2.93V
3.08V
4.00V
2.10V
2.20V
2.40V
2.70V
2.80V
2.80V
2.80V
2.93V
A8500A
AA21ww
A8500A
AF27ww
A8500A
CA21ww
A8500A
DA21ww
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-23
ARTww
ARMww
ASRww
ARZww
AUCww
AUVww
ATOww
ATQww
AUWww
AVDww
AUXww
ASQww
ASSww
ASSww
ASSww
ARLww
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
6
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Ordering Information (contd.)
Part Number
Marking
VTH Voltage
Package Operating Temp. Range
- 40oC to + 85oC
SOT-23
AME8500BEETBA42
ASIww
4.20V
- 40oC to + 85oC
SOT-23
AME8500BEETCA21
AME8500BEEVAK27
AME8500BEFTAA21
AME8500BEFTAA27
AME8500BEFTAF27
AME8500BEFTAF40
AME8500BEFTBA23
AME8500CEETAA21
AME8500CEETAE26
AME8500CEETAE42
AME8500CEETAF29
AME8500CEETBE42
AME8500CEETBF31
AME8500CEETBF46
AME8500CEETCA21
AME8500CEFTBA27
AME8500CEFTBA29
AME8500CEFTBA42
AME8500CEFTCD28
AME8500CEFTCD46
ASXww
AUFww
2.10V
2.70V
2.10V
2.70V
2.70V
4.00V
2.32V
2.10V
2.63V
4.20V
2.93V
4.20V
3.08V
4.63V
2.10V
2.70V
2.93V
4.20V
2.80V
4.63V
- 40oC to + 85oC
SOT-25
A8500B
AA21ww
A8500B
AA27ww
A8500B
AF27ww
A8500B
AF40ww
A8500B
BA23ww
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-23
ASYww
ASHww
AUZww
ASLww
AVAww
AVYww
ARWww
ASZww
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
- 40oC to + 85oC
SOT-23
A8500C
BA27ww
A8500C
BA29ww
A8500C
BA42ww
A8500C
CD28ww
A8500C
CD46ww
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
- 40oC to + 85oC
SOT-89
Please consult AME sales office or authorized Rep./Distributor for other voltage options.
7
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Absolute Maximum Ratings
Parameter
Supply Voltage
Maximum
Unit
7
V
ESD Classification
B
Input Current, VDD
20
20
mA
mA
Output Current, RESET, ResetB
Rate of Rise, VDD
100
V/ s
µ
Caution: Stress above the listed absolute maximum rating may cause permanent damage to the device
n Recommended Operating Conditions
Parameter
Rating
Unit
Supply Voltage
1.6 - 5
V
oC
oC
oC
Ambient Temperature Range
Junction Temperature
- 40 to + 85
- 40 to + 125
- 65 to 150
Storage Temperature
n Thermal Information
Parameter
Maximum
Unit
SOT-23
325
oC / W
Thermal Resistance
Power Dissipation
SOT-89
SOT-23
SOT-89
180
350
650
150
300
mW
oC
oC
Maximum Junction Temperature
Maximum Lead Temperature (10 Sec)
8
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Electrical Specifications
TA = 25OC unless otherwise noted
Test Condition
Parameter
VDD Range*
Symbol
Min
1
Typ
Max
5.5
5.5
3.0
5.0
Units
VRANGE
V
TA=-40~85oC
VDD = VTH*1.10
1
Supply Current
IDD
A
µ
VDD = VTH*1.10, TA=-40~85oC
VTHNOM
1.5%
+
+
VTHNOM -1.5%
Reset Threshold
Hysteresis Range
VTH
mV
VTHNOM
2.0%
TA=-40~85oC
V
THNOM -2.0%
VHYST
VRELEASE - VTH, note1
20
30
mV
RESET Threshold
Tempco
ppm
RESETB Output
Voltage Low
VDD<VTH (MIN)
I
SINK=1.2mA,
VOL
0.5
V
V
TA= -40~85oC
RESET Output
Voltage Low
VDD>VTH (MAX)
ISOURCE=0.5mA,
VDD>1.8V
RESETB Output
Voltage High
V
DD>VTH (MAX)
I
SOURCE=0.15mA,
1.8V>=VDD>1.0V
VOH
0.8VDD
ISOURCE=0.5mA,
VDD>1.8V
RESET Output
Voltage High
VDD<VTH (MIN)
ISOURCE=0.15mA,
1.8V>=VDD>1.0V
VDD to Reset Delay
TD1
VDD= VTH - 100mV, TA= -40 ~ 85oC
40
1.5
30
200
5
S
µ
Version A
Version D
0.5
15
mS
mS
mS
mS
mS
oC
50
TA= -40 ~ 85oC
Version E
Reset Timeout Period*
Temperature Shutdown
TD2
80
150
210
440
80
230
500
600
Version F
Version K
140
300
TOFF
THYS
AME8501 only
Temperature Shutdown
Hysteresis
oC
AME8501 only
20
Note1:The data based on VTH=2.7V part type.
9
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Timing Diagram
VRelease
VTH
VDD
TD2
50%
TD1
50%
50%
RESET
TD2
50%
TD1
RESETB
n Applications Information
Supply Transients
These devices have a certain immunity to fast negative
going transients. In the following pages the graph titled
“Glitch Rejection” indicates the maximum allowable glitch
amplitude and duration to avoid triggering an unintended
reset. As shown in the graph shorter transients can have
larger amplitudes without triggering resets.
Glitch Rejection
Reset Time vs. Temperature
220
215
210
205
200
195
190
140
120
100
80
60
40
20
0
AME8500AEETAF26
-45
-5
25
55
85
115
0.01
0.1
1
Temperature (oC)
Glitch Amplitude (V)
10
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
IDD vs. Temperature
Reset VTH vs. Temperature
2.650
2.648
2.646
2.644
2.642
2.640
2.638
2.636
2.634
2.632
2.630
2.35
2.30
2.25
AME8500AEETAF26
AME8500AEETAF26
2.20
2.15
2.10
-45
-5
25
55
85
115
-45
-5
25
55
85
115
Temperature (oC)
Temperature (oC)
IDD vs. VDD
TD1 Delay vs. Temperature
2
43
42
41
40
39
38
37
1.6
1.2
0.8
0.4
0
85OC
-40OC
0OC
-40
-20
0
20
40
60
80
100
0
1
2
3
4
5
Temperature (oC)
VDD (V)
Threshold Hysteresis vs. Temperature
Reset VOL vs. Temperature
0.5
0.4
0.3
0.265
0.260
0.255
0.250
0.245
0.240
0.235
0.230
0.225
0.220
0.2
0.1
0
AME8500AEETAF26
-45
-5
25
55
85
115
-40
-20
0
20
40
60
80
100
Temperature (oC)
Temperature (oC)
11
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Package Dimension
SOT-23
Top View
Side View
MILLIMETERS
INCHES
MIN MAX
SYMBOLS
MIN
1.00
0.00
0.35
0.09
2.70
1.40
MAX
1.40
0.15
0.50
0.25
3.10
1.80
D
C
0.0394 0.0551
0.0000 0.0059
0.0138 0.0197
0.0035 0.0098
0.1063 0.1220
0.0551 0.0709
0.0748 BSC
A
A1
b
C
D
E
e
£ c1
1.90 BSC
e
2.40
3.00
0.09449 0.11811
0.0138BSC
H
L
0.35BSC
Front View
0o
10o
0o
10o
è1
b
SOT-23-L
MILLIMETERS
INCHES
SYMBOLS
MIN
1.00
0.35
0.09
2.70
1.40
MAX
1.30
0.50
0.25
3.10
1.80
MIN
MAX
Top View
Side View
0.0394 0.0512
0.0138 0.0197
0.0035 0.0098
0.1063 0.1220
0.0551 0.0709
0.0748 BSC
A+A1
D
b
C
D
E
e
C
1.90 BSC
2.40
3.00
0.09449 0.11811
0.0138BSC
H
L
0.35BSC
e
£ c1
0o
10o
0o
10o
è1
Front View
b
12
AME, Inc.
µProcessor Supervisory
AME8500 / 8501
n Package Dimension
SOT-89
Side View
Top View
MILLIMETERS
INCHES
MIN MAX
SYMBOLS
D
MIN
MAX
D1
1.39
1.60
0.05472 0.06299
0.0315REF
A
A1
C
POLISH
0.8REF
0.35
4.39
1.35
2.28
0.44
4.60
1.83
3.60
0.01378 0.01732
0.17283 0.1811
0.05315 0.07205
0.08976 0.14173
0.1181REF
D
D1
E
C
S1
e
3.00REF
e
0.70REF
1.50REF
0.0276REF
H
Front View
0.0590REF
S1
MATTE FINISH
A
POLISH
SOT-25
Top View
Side View
MILLIMETERS
INCHES
SYMBOLS
D
MIN
MAX
MIN
MAX
1.20REF
0.0472REF
A
A1
b
0.00
0.30
2.70
1.40
0.15
0.55
3.10
1.80
0.0000 0.0059
0.0118 0.0217
0.1063 0.1220
0.0551 0.0709
0.07480 BSC
D
E
e
1.90 BSC
£ c1
S1
e
2.60
3.00
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Front View
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13
www.ame.com.tw
E-Mail: sales@ame.com.tw
Life Support Policy:
These products of AME, Inc. are not authorized for use as critical components in life-support devices or
systems, without the express written approval of the president
of AME, Inc.
AME, Inc. reserves the right to make changes in the circuitry and specifications of its devices and
advises its customers to obtain the latest version of relevant information.
AME, Inc. , June 2003
Document: 2007-DS8500/8501-L
Corporate Headquarter
AME, Inc.
2F, 189 Kang-Chien Road, Nei-Hu Dist.
Taipei 114 Taiwan, R.O.C.
Tel: 886 2 2627-8687
U.S.A. Subsidiary
Analog Microelectronics, Inc.
3100 De La Cruz Blvd., Suite 201
Santa Clara, CA. 95054-2046
Tel : (408) 988-2388
Fax: 886 2 2659-2989
Fax: (408) 988-2489
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